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Design and Manufacture of Optimized Continuous Composite Fiber Filament Using Additive Manufacturing Systems

机译:利用增材制造系统设计和制造优化的连续复合纤维长丝

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The main purpose of this study is to investigate the current state of Additive Manufacturing of Fiber Reinforced Plastics technology. Recent advances in additive manufacturing, with the introduction of fused deposition modeling of continuous fiber-reinforced thermoplastics, have opened a door for further improvements in composite manufacturing. We explore in detail the different available methods of manufacturing structures with continuous fiber reinforced plastics using additive manufacturing. It was found that it's possible to print different types of fibers; Glass, Carbon, Kevlar and Yute (Bio Filaments), and there are two types of resins that are mainly used; thermosets and thermoplastics. Finally, we conclude by analyzing current challenges of this technology in the area of design and structural optimization.
机译:这项研究的主要目的是研究纤维增强塑料增材制造技术的现状。随着连续纤维增强热塑性塑料的熔合沉积模型的引入,增材制造的最新进展为复合材料制造的进一步改进打开了一扇门。我们将详细探讨使用增材制造技术用连续纤维增强塑料制造结构的不同可用方法。已经发现可以印刷不同类型的纤维。玻璃,碳,凯夫拉尔纤维和Yute(生物纤维),主要使用两种类型的树脂:热固性塑料和热塑性塑料。最后,我们通过分析该技术在设计和结构优化方面的当前挑战来得出结论。

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